Disturbance in Testosterone Production in Leydig Cells by Polycyclic Aromatic Hydevrepocarbons
نویسنده
چکیده
Polycyclic aromatic hydevrepocarbons (PAHs), which are ubiquitous in the air, are present as volatile and particulate pollutants that result from incomplete combustion. Most PAHs have toxic, mutagenic, and/or carcinogenic properties. Among PAHs, benzo[a]pyrene (B[a]P) and dimethylbenz[a]anthracene (DMBA) are suspected endocrine disruptors. The testis is an important target for PAHs, yet effects on steroidogenesis in Leydig cells are yet to be ascertained. Particularly, disruption of testosterone production by these chemicals can result in serious defects in male reproduction. Exposure to B[a]P reduced serum and intratesticular fluid testosterone levels in rats. Of note, the testosterone level reductions were accompanied by decreased steroidogenic acute regulatory protein (StAR) and 3β-hydevrepoxysteroid dehydevrepogenase isomerase (3β-HSD) expression in Leydig cells. B[a]P exposure can decrease epididymal sperm quality, possibly by disturbing the testosterone level. StAR may be a key steroidogenic protein that is targeted by B[a]P or other PAHs.
منابع مشابه
Benzo[a]pyrene Reduces Testosterone Production in Rat Leydig Cells via a Direct Disturbance of Testicular Steroidogenic Machinery
BACKGROUND Benzo[a]pyrene (B[a]P), a polycyclic aromatic hydrocarbon (PAH), is a ubiquitous environmental pollutant that is currently suspected of being an endocrine disruptor. The testis is an important target for PAHs, yet insufficient attention has been paid to their effects on steroidogenesis in Leydig cells. OBJECTIVE We hypothesized that long-term exposure to low concentrations of B[a]P...
متن کاملEffect of extracellular matrix on testosterone production during in vitro culture of bovine testicular cells
Testosterone is believed to play a significant role in spermatogenesis, but its contribution to the process of spermatogenesis is not completely understood. Given that extracellular matrix (ECM) facilitates differentiation of spermatogonial stem cells (SSCs) during culture, the present study was conducted to elucidate whether testosterone contribute to the permissive effect of ECM on SSCs diffe...
متن کاملP-220: Co-Administration of Testosterone and Vitamin E Inhibited The Atrazine-Induced Damages on Testis; Evidence for RNA Damage and Leydig Cells Steroidogenesis
Background: Atrazine (ATR), an herbicide, is used in order to control broadleaf and grassy weed. ATR has been estimated to impact the testicular tissue both by inhibiting the endocrine system and partly by reducing the antioxidant status. Thus, current study was designed to evaluate the protective effect of vitamin E and testosterone against ATR-induced damages in testicular tissue. Materials a...
متن کاملO-33: Nanosilver Impacts The Testicular Tissue by Reducing The GLUT I Expression in Leydig Cells; Correlation with Germinal Cells RNA Damage
Background: Nanosilver (NS) contains silver nanoparticles to control infections delivered from bacteria. The NS compounds as well as being toxic to prokaryotes are highly toxic to mammalian cells. The present study was evaluated the effect of colloidal NS on leydig cells glucose transporter type I (GLUT I) expression, serum level of testosterone, germinal cells RNA damage and spermiogenesis pro...
متن کاملP-7: Testosterone and Gonadotrophin Hormones Plasma Concentration-Induced Changes in Sertoli and Leydig Cells Number in Hyperprolactinemic Mature Male Mice
Background: Hyperprolactinemia is a particular concern in the treatment of schizophrenic patients. The side effects associated with high prolactin levels can have a negative impact on GnRH pulsatile secretion and, consequently LH, FSH and testosterone pulsatility and follows by, on special testicular cells that have these hormon’s receptors such as sertoli and leydig cells. Quantification the d...
متن کامل